[1] 中国地震台网中心. 12月18日23时59分在甘肃临夏州积石山县发生6.2级地震[EB/OL]. (2023-12-19)[2023-12-27]. https://www.cenc.ac.cn/cenc/dzxx/409064/index.html. The China earthquake networks center. At 23:59 on December 18, 2023, a M6.2 earthquake struck Jishishan County, Linxia Prefecture, Gansu Province[EB/OL]. (2023-12-19)[2023-12-27]. https://www.cenc.ac.cn/cenc/dzxx/409064/index.html (in Chinese). [2] 潘建磊, 梁庆国, 刘海生, 等. 黄土液化作用及其次生灾害风险评估方法初探以积石山MS6.2地震为例[J]. 地震工程学报, 2024, 46(4): 836-845. PAN Jian-lei, LIANG Qing-guo, LIU Hai-sheng, et al. Loess liquefaction effect and the risk assessment method of its secondary disasters: A case study of Jishishan MS6.2 earthquake[J]. China Earthquake Engineering Journal, 2024, 46(4): 836-845 (in Chinese). [3] 陈龙伟, 汪云龙, 袁晓铭, 等. 2023年甘肃积石山6.2级地震中川乡液化流滑灾害调查及诱因初析[J]. 地震工程与工程振动, 2024, 44(1): 187-193. CHEN Long-wei, WANG Yun-long, YUAN Xiao-ming, et al. Preliminary analysis for the triggering of soil flowslide that occurred in Zhongchuan Town following the 2023 Jishishan MS6.2 earthquake in Gansu Province[J]. Earthquake Engineering and Engineering Vibration, 2024, 44(1): 187-193 (in Chinese). [4] 高原, 李心怡, 李抒予, 等. 2023年12月18日积石山6.2级地震的深浅变形构造分析[J]. 地震, 2024, 44(1): 160-166. GAO Yuan, LI Xin-yi, LI Shu-yu, et al. Deep and shallow deformation tectonics of Jishishan MS6.2 earthquake on 18 December 2023 in China[J]. Earthquake, 2024, 44(1): 160-166 (in Chinese). [5] 王勤彩, 罗钧, 陈翰林, 等. 2023年12月18日甘肃积石山6.2级地震震源机制解[J]. 地震, 2024, 44(1): 185-188. WANG Qin-cai, LUO Jun, CHEN Han-lin, et al. Focal mechanism for the December 18, 2023, Jishishan MS6.2 earthquake in Gansu Province[J]. Earthquake, 2024, 44(1): 185-188 (in Chinese). [6] 中国地震局. 甘肃积石山6.2级地震为逆冲型破裂和主震-余震型地震[EB/OL]. (2023-12-19)[2023-12-27]. https://www.cea.gov.cn/cea/xwzx/mtbb/5747808/index.html. China Earthquake Administration. The Jishishan M6.2 earthquake in Gansu Province is a thrust rupture and main shock-aftershock earthquake[EB/OL]. (2023-12-19)[2023-12-27]. https://www.cea.gov.cn/cea/xwzx/mtbb/5747808/index.html (in Chinese). [7] 钱家栋, 陈有发, 金安忠. 地电阻率法在地震预报中的应用[M]. 北京: 地震出版社, 1985. QIAN Jia-dong, CHEN You-fa, JIN An-zhong. Application of electrical resistivity method in earthquake forecasting[M]. Beijing: Seismological Press, 1985 (in Chinese). [8] 钱家栋, 马钦忠, 李劭秾. 汶川MS8.0地震前成都台NE测线地电阻率异常的进一步研究[J]. 地震学报, 2013, 35(1): 4-17. QIAN Jia-dong, MA Qin-zhong, LI Shao-nong. Further study on the anomalies in apparent resistivity in the NE configuration at chengdu station associated with Wenchuan MS8.0 earthquake[J]. Acta Seismologica Sinica, 2013, 35(1): 4-17 (in Chinese). [9] 朱涛. 汶川MS8.0地震前区域性地电阻率异常初步研究[J]. 地震学报, 2013, 35(1): 18-25. ZHU Tao. Preliminary study on regional geo-resistivity anomaly before the Wenchuan MS8.0 earthquake[J]. Acta Seismologica Sinica, 2013, 35(1): 18-25 (in Chinese). [10] 汪志亮, 郑大林, 余素荣. 地震地电阻率前兆异常现象[M]. 北京: 地震出版社, 2002. WANG Zhi-liang, ZHENG Da-lin, YU Su-rong. Seismic resistivity precursor anomalies[M]. Beijing: Seismological Press, 2002 (in Chinese). [11] 中国地震局监测预报司. 地震电磁学理论基础与观测技术[M]. 北京: 地震出版社, 2010. Monitoring and Forecasting Department of China Earthquake Administration. Theoretical Foundation and Observation Techniques of Earthquake Electromagnetics[M]. Beijing: Seismological Press, 2010 (in Chinese). [12] 王兰炜, 张宇, 张兴国, 等. 地电阻率观测技术[M]. 北京: 地震出版社, 2022. WANG Lan-wei, ZHANG Yu, ZHANG Xing-guo, et al. Geo-resistivity observation techniques[M]. Beijing: Seismological Press, 2022 (in Chinese). [13] Brace W F, Orange A S, Madden T R. The effect of pressure on the electrical resistivity of water-saturated crystalline rocks[J]. Journal of Geophysical research, 1965, 70(22): 5669-5678. [14] Yamazaki Y. Electrical conductivity of strained rocks. The second paper: Further experiments on sedimentary rocks[J]. Bulletin of the Earthquake Research Institute, 1966, 44(4): 1553-1570. [15] 张金铸, 陆阳泉. 不同三轴应力条件下岩石电阻率变化的试验研究[J]. 地震学报, 1983, 5(4): 440-445. ZHANG Jin-zhu, LU Yang-quan. Experimental study of rock resistivity changes under different triaxial stresses[J]. Acta Seismologica Sinica, 1983, 5(4): 440-445 (in Chinese). [16] Jouniaux L, Zamora M, Reuschlé T. Electrical conductivity evolution of non-saturated carbonate rocks during deformation up to failure[J]. Geophysical Journal International, 2006, 167(2): 1017-1026. [17] 安金珍, 修济刚, 陈峰, 等. 单轴压力下有补给水岩石电阻率变化各向异性研究[J]. 中国地震, 1996, 12(3): 300-306. AN Jin-zhen, XIU Ji-gang, CHEN Feng, et al. Anisotropy studies of rock resistivity changes under uniaxial pressure and water replenishment[J]. Earthquake Research in China, 1996, 12(3): 300-306 (in Chinese). [18] 陈峰, 安金珍, 廖椿庭. 原始电阻率各向异性岩石电阻率变化的方向性[J]. 地球物理学报, 2003, 46(2): 271-280. CHEN Feng, AN Jin-zhen, LIAO Chun-ting. Directional characteristic of resistivity changes in rock of original resistivity anisotropy[J]. Chinese Journal of Geophysics, 2003, 46(2): 271-280 (in Chinese). [19] Zhu T, Zhou J G, Hao J Q. Experimental studies on the changes in resistivity and its anisotropy using electrical resistivity tomography[J]. International Journal of Geophysics, 2012, 2012(1): 142069. [20] 张斌, 朱涛, 周建国. 岩石电阻率图像及各向异性变化的实验研究[J]. 地震学报, 2017, 39(4): 478-494. ZHANG Bin, ZHU Tao, ZHOU Jian-guo. Experimental studies on the changes of rock resistivity image and anisotropy[J]. Acta Seismologica Sinica, 2017, 39(4): 478-494 (in Chinese). [21] 赵玉林, 钱复业, 杨体成, 等. 原地电阻率变化的实验[J]. 地震学报, 1983, 5(2): 217-225. ZHAO Yu-lin, QIAN Fu-ye, YANG Ti-cheng, et al. Experiments in situ of electrical resistivity changes[J]. Acta Seismologica Sinica, 1983, 5(2): 217-225 (in Chinese). [22] 杜学彬, 马占虎, 叶青, 等. 与强地震有关的视电阻率各向异性变化[J]. 地球物理学进展, 2006, 21(1): 93-100. DU Xue-bin, MA Zhan-hu, YE Qing, et al. Anisotropic changes in apparent resistivity associated with strong earthquakes[J]. Progress in Geophysics, 2006, 21(1): 93-100 (in Chinese). [23] 杜学彬, 薛顺章, 郝臻, 等. 地电阻率中短期异常与地震的关系[J]. 地震学报, 2000, 22 (4): 368-376. DU Xue-bin, XUE Shun-zhang, HAO Zhen, et al. On the relation of moderate-short term anomaly of earth resistivity to earthquake[J]. Acta Seismologica Sinica, 2000, 22(4): 368-376 (in Chinese). [24] 杜学彬, 刘君, 崔腾发, 等. 两次近距离大震前成都台视电阻率重现性、 相似性和各向异性变化[J]. 地球物理学报, 2015, 58(2): 576-588. DU Xue-bin, LIU Jun, CUI Teng-fa, et al. Repeatability, similarity and anisotropy changes in apparent resistivity recorded by station Chengdu at near distances before two great earthquakes[J]. Chinese Journal of Geophysics, 2015, 58(2): 576-588 (in Chinese). [25] 桂燮泰, 关华平, 戴经安. 唐山、 松潘地震前视电阻率短临异常图象重现性[J]. 西北地震学报, 1989, 11(4): 71-75. GUI Xie-tai, GUAN Hua-ping, DAI Jing-an. The short-term and immediate anomalous patternrecurrences of the apparent resistivity before the Tangshan and Songpan earthquakes of 1976[J]. Northwestern Seismological Journal, 1989, 11(4): 71-75 (in Chinese). [26] Lu J, Xie T, Li M, et al. Monitoring shallow resistivity changes prior to the 12 May 2008 M8.0 Wenchuan earthquake on the Longmen Shan tectonic zone, China[J]. Tectonophysics, 2016, 675: 244-257. [27] 解滔, 卢军. 中国中强地震前地电阻率中短期异常特征及其可能原因[J]. 中国地震, 2023, 39(1): 45-63. XIE Tao, LU Jun. Middle-short term abnormal characteristics of apparent resistivity before strong earthquakes in China and its possible mechanism[J]. Earthquake Research in China, 2023, 39(1): 45-63 (in Chinese). [28] 钱复业, 赵玉林, 于谋明, 等. 地震前地电阻率的异常变化[J]. 中国科学(B辑), 1982(9): 831-839. QIAN Fu-ye, ZHAO Yu-lin, YU Mou-ming, et al. Geoelectrical resistivity anomalies before earthquake[J]. Science in China Series B-Chemistry, Biological, Agricultural, Medical & Earth Sciences, 1982(9): 831-839 (in Chinese). [29] 钱家栋. 与大震孕育过程有关的地电阻率变化研究[J]. 中国地震, 1993, 9(4): 341-350. QIAN Jia-dong. A study on the changes in geoelectrical resistivity associated with preparatory process of great earthquakes in China[J]. Earthquake Research in China, 1993, 9(4): 341-350 (in Chinese). [30] 杜学彬. 在地震预报中的两类视电阻率变化[J]. 中国科学: 地球科学, 2010, 40(10): 1321-1330. DU Xue-bin. Two types of changes in apparent resistivity in earthquake prediction[J]. Science China Earth Sciences, 2010, 40(10): 1321-1330 (in Chinese). [31] 解滔, 薛艳, 卢军. 中国MS≥7.0地震前视电阻率变化及其可能原因[J]. 地球物理学报, 2022, 65(8): 3064-3077. XIE Tao, XUE Yan, LU Jun. Changes in apparent resistivity and its possible reasons before earthquakes of MS≥7.0 in China[J]. Chinese Journal of Geophysics, 2022, 65(8): 3064-3077 (in Chinese). [32] 韩盈, 于晨, 解滔. 中国大陆MS≥6.0地震前地电阻率异常特征[J]. 地震地磁观测与研究, 2023, 44(5): 81-94. HAN Ying, YU Chen, XIE Tao. Apparent resistivity changes before the earthquakes of MS≥6.0 in China[J]. Seismological and Geomagnetic Observation and Research, 2023, 44(5): 81-94 (in Chinese). [33] 袁道阳, 张培震, 雷中生, 等. 青海拉脊山断裂带新活动特征的初步研究[J]. 中国地震, 2005, 21(1): 93-102. YUAN Dao-yang, ZHANG Pei-zhen, LEI Zhong-sheng, et al. A preliminary study on the new activity features of the Lajishan mountain fault zone in Qinghai Province[J]. Earthquake Research in China, 2005, 21(1): 93-102 (in Chinese). [34] 杜学彬, 孙君嵩, 陈军营. 地震预测中的地电阻率数据处理方法[J]. 地震学报, 2017, 39(4): 531-548. DU Xue-bin, SUN Jun-song, CHEN Jun-ying. Processing methods for the observation data of georesistivity in earthquake prediction[J]. Acta Seismologica Sinica, 2017, 39(4): 531-548 (in Chinese). [35] 张宇, 王兰炜, 胡哲, 等. 加权平均算法在地电阻率日均值计算中的应用[J]. 地震, 2023, 43(2): 25-37. ZHANG Yu, WANG Lan-wei, HU Zhe, et al. Application of weighted average algorithm in calculating the daily mean value of geo-electrical resistivity[J]. Earthquake, 2023, 43(2): 25-37 (in Chinese). |